Resumen
Eukaryotic elongation factors (eEFs) are protein factors that mediate the extension of peptide chain, among which eukaryotic elongation factor 1 alpha (eEF1A) is one of the most abundant protein synthesis factors. Previously we showed that the P3 protein of Soybean mosaic virus (SMV), one of the most destructive and successful viral pathogens of soybean, targets a component of the soybean translation elongation complex to facilitate its pathogenesis. Here, we conducted a systematic analyses of the soybean eEF (GmeEF) gene family in soybean and examinedits role in virus resistance. In this study, GmeEF family members were identified and characterized based on sequence analysis. The 42 members, which were unevenly distributed across the 15 chromosomes, were renamed according to their chromosomal locations. The GmeEF members were further divided into 12 subgroups based on conserved motif, gene structure, and phylogenetic analyses. Analysis of the promoter regions showed conspicuous presence of myelocytomatosis (MYC) and ethylene-responsive (ERE) cis-acting elements, which are typically involved in drought and phytohormone response, respectively, and thereby in plant stress response signaling. Transcriptome data showed that the expression of 15 GmeEF gene family members changed significantly in response to SMV infection. To further examine EF1A function in pathogen response, three different Arabidopsis mutants carrying T-DNA insertions in orthologous genes were analyzed for their response to Turnip crinkle virus (TCV) and Cucumber mosaic virus (CMV). Results showed that there was no difference in viral response between the mutants and the wild type plants. This study provides a systematic analysis of the GmeEF gene family through analysis of expression patterns and predicted protein features. Our results lay a foundation for understanding the role of eEF gene in soybean anti-viral response.
| Idioma original | English |
|---|---|
| Número de artículo | 1421221 |
| Publicación | Frontiers in Plant Science |
| Volumen | 15 |
| DOI | |
| Estado | Published - 2024 |
Nota bibliográfica
Publisher Copyright:Copyright © 2024 Luan, Song, Huang, Li, Xu, Kachroo, Kachroo and Zhao.
Financiación
The author(s) declare financial support was received for the research, authorship, and/or publication of this article. The authors acknowledge support from the National Natural Science Foundation of China (32301895), Open project of National Key Laboratory for Crop Genetics and Germplasm Enhancement (ZW202005) and Natural Science Foundation of Shandong Province (ZR2020QC117) to HL, National key research and development program (2022YFD2300101-1), Seed-Industrialized Development Program in Shandong Province (2021LZGC003) and Science & Technology Specific Projects in Agricultural High-tech Industrial Demonstration Area of the Yellow River Delta (2022SZX18) to LZ, Seed-Industrialized Development Program in Shandong Province (2023LZGC008-001) and Shandong Soybean Industrial Technology System of China (SDAIT-28-02) to LZ and HL. This article is based upon work supported by (while serving at) the National Science Foundation for Aardra Kachroo.
| Financiadores | Número del financiador |
|---|---|
| National Science Foundation for Aardra Kachroo | |
| Yellow River Delta | 2022SZX18, 2023LZGC008-001 |
| National Key Basic Research and Development Program of China | 2022YFD2300101-1 |
| Shandong Soybean Industrial Technology System of China | SDAIT-28-02 |
| National Natural Science Foundation of China (NSFC) | 32301895 |
| National Key Laboratory for Crop Genetics and Germplasm Enhancement | ZW202005 |
| Natural Science Foundation of Shandong Province | ZR2020QC117 |
| Seed-Industrialized Development Program in Shandong Province | 2021LZGC003 |
ASJC Scopus subject areas
- Plant Science
Huella
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